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使用液体脂肪酶制剂生产生物柴油的机理建模

Mechanistic modeling of biodiesel production using a liquid lipase formulation.

作者信息

Price Jason, Hofmann Björn, Silva Vanessa T L, Nordblad Mathias, Woodley John M, Huusom Jakob K

机构信息

Dept. of Chemical and Biochemical Engineering, Technical University of Denmark, DK-2800 Kgs, Lyngby, Denmark.

出版信息

Biotechnol Prog. 2014 Nov-Dec;30(6):1277-90. doi: 10.1002/btpr.1985. Epub 2014 Sep 16.

Abstract

In this article, a kinetic model for the enzymatic transesterification of rapeseed oil with methanol using Callera™ Trans L (a liquid formulation of a modified Thermomyces lanuginosus lipase) was developed from first principles. We base the model formulation on a Ping-Pong Bi-Bi mechanism. Methanol inhibition, along with the interfacial and bulk concentrations of the enzyme was also modeled. The model was developed to describe the effect of different oil compositions, as well as different water, enzyme, and methanol concentrations, which are relevant conditions needed for process evaluation, with respect to the industrial production of biodiesel. The developed kinetic model, coupled with a mass balance of the system, was fitted to and validated on experimental results for the fed-batch transesterification of rapeseed oil. The confidence intervals of the parameter estimates, along with the identifiability of the model parameters were presented. The predictive capability of the model was tested for a case using 0.5% (wt. Enzyme/wt. Oil), 0.5% (wt. Water /wt. Oil) and feeding 1.5 times the stoichiometric amount of methanol in total over 24 h. For this case, an optimized methanol feeding profile that constrains the amount of methanol in the reactor was computed and the predictions experimentally validated. Monte-Carlo simulations were then used to characterize the effect of the parameter uncertainty on the model outputs, giving a biodiesel yield, based on the mass of oil, of 90.8 ± 0.55 mass %.

摘要

在本文中,基于第一性原理建立了使用Callera™ Trans L(一种改良的嗜热栖热菌脂肪酶的液体制剂)将菜籽油与甲醇进行酶促酯交换反应的动力学模型。我们基于乒乓双双机制进行模型构建。还对甲醇抑制作用以及酶的界面浓度和本体浓度进行了建模。该模型旨在描述不同油组成以及不同水、酶和甲醇浓度的影响,这些都是生物柴油工业生产过程评估所需的相关条件。所建立的动力学模型与系统的质量平衡相结合,对菜籽油分批补料酯交换反应的实验结果进行了拟合和验证。给出了参数估计的置信区间以及模型参数的可识别性。针对使用0.5%(重量比,酶/油)、0.5%(重量比,水/油)且在24小时内总共加入化学计量比1.5倍甲醇的情况,测试了模型的预测能力。对于这种情况,计算了一种优化的甲醇进料曲线,该曲线限制了反应器中甲醇的量,并通过实验对预测结果进行了验证。然后使用蒙特卡罗模拟来表征参数不确定性对模型输出的影响,基于油的质量,生物柴油产率为90.8±0.55质量%。

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